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Co-simulation of cyber-physical systems using a DEVS wrapping strategy in the MECSYCO middleware

机译:在MECSYCO中间件中使用DEVS包装策略对网络物理系统进行联合仿真

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摘要

Most modeling and simulation (M&S) questions about cyber-physical systems (CPSs) require expert skills belonging to different scientific fields. The challenges are then to integrate each domain’s tools (formalism and simulation software) within the rigorous framework of M&S process. To answer this issue, we give the specifications of the Multi-agent Environment for Complex-SYstem CO-simulation (MECSYCO) middleware which enables to interconnect several pre-existing and heterogeneous M&S tools, so they can simulate a whole CPS together. The middleware performs the co-simulation in a parallel, decentralized, and distributable fashion thanks to its modular multi-agent architecture. In order to rigorously integrate tools that use different formalisms, the co-simulation engine of MECSYCO is based on the discrete event system specification (DEVS). The central idea of MECSYCO is to use a DEVS wrapping strategy to integrate each tool into the middleware. Thus, heterogeneous tools can be homogeneously co-simulated in the form of a DEVS system. By using DEVS, MECSYCO benefits from the numerous scientific works which have demonstrated the integrative power of this formalism and give crucial guidelines to rigorously design wrappers. We demonstrate that our discrete framework can integrate a vast amount of continuous M&S tools by wrapping the Functional Mockup Interface (FMI) standard. To this end, we take advantage of DEVS efforts of the literature (namely, the DEV&DESS hybrid formalism and Quantized State System (QSS) solvers) to design DEVS wrappers for Functional Mockup Unit (FMU) components. As a side-effect, this wrapping is not restricted to MECSYCO but can be applied in any DEVS-based platform. We evaluate MECSYCO with the proof of concept of a smart heating use case, where we co-simulate non-DEVS-centric M&S tools.
机译:有关网络物理系统(CPS)的大多数建模和仿真(M&S)问题都需要属于不同科学领域的专家技能。然后面临的挑战是在M&S流程的严格框架中集成每个领域的工具(形式主义和模拟软件)。为了解决这个问题,我们给出了复杂系统协同仿真多主体环境(MECSYCO)中间件的规范,该中间件能够互连多个先前存在的异构M&S工具,以便它们可以一起仿真整个CPS。由于其模块化的多主体体系结构,中间件以并行,分散和可分发的方式执行协同仿真。为了严格集成使用不同形式形式的工具,MECSYCO的协同仿真引擎基于离散事件系统规范(DEVS)。 MECSYCO的中心思想是使用DEVS包装策略将每个工具集成到中间件中。因此,可以以DEVS系统的形式对异构工具进行同质共仿真。通过使用DEVS,MECSYCO受益于众多科学著作,这些著作证明了这种形式主义的综合力量,并为严格设计包装纸提供了关键指导。我们证明,通过包装功能模型接口(FMI)标准,我们的离散框架可以集成大量连续的M&S工具。为此,我们利用文献的DEVS努力(即DEV&DESS混合形式主义和量化状态系统(QSS)求解器)来设计功能模型单元(FMU)组件的DEVS包装器。副作用是,这种包装并不限于MECSYCO,而是可以应用于任何基于DEVS的平台。我们以智能供热用例的概念验证来评估MECSYCO,在该用例中,我们将共同模拟非以DEVS为中心的M&S工具。

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